1 citations · 1 across the 3 of their papers we have counts for
7 papers
Wave turbulence theory of odd fluids and solids: kinetic equations and solutions
Xander M. de Wit, Léo Touzo, Sébastien Galtier +3
The theory of wave turbulence describes the properties of physical systems composed of a set of weak-amplitude random waves interacting nonlinearly. Here, we study odd wave turbule…
Odd wave turbulence
Xander M. de Wit, Léo Touzo, Sébastien Galtier +3
Wave turbulence describes the statistical dynamics of weakly interacting waves in out-of-equilibrium systems. These systems are out of equilibrium because forcing and dissipation o…
Non-uniqueness of the steady state for run-and-tumble particles with a double-well interaction potential
Léo Touzo, Pierre Le Doussal
We study run-and-tumble particles (RTPs) in one dimension interacting via a double-well potential , which is repulsive at short interparticle dis…
Exact results for active particle models: from long-range interactions to first-passage properties
Léo Touzo
The goal of this thesis is to obtain new exact results for models of active particles in one dimension, focusing on two different aspects: their behavior in the presence of long-ra…
Crystal to liquid cross-over for active particles with inverse-square power-law interaction
Saikat Santra, Leo Touzo, Chandan Dasgupta +6
We consider a one-dimensional system comprising of run-and-tumble particles confined in a harmonic trap interacting via a repulsive inverse-square power-law interaction. We num…
Run-and-tumble particles with 1D Coulomb interaction: the active jellium model and the non-reciprocal self-gravitating gas
Léo Touzo, Pierre Le Doussal
Recently we studied run-and-tumble particles in one dimension - which switch with rate between driving velocities - interacting via the long range 1D Coulomb pot…